SYSTEMS AND METHODS FOR TESTING ARM AND FIRE DEVICES

    公开(公告)号:US20170336460A1

    公开(公告)日:2017-11-23

    申请号:US15160046

    申请日:2016-05-20

    申请人: Raytheon Company

    发明人: Bradley M. Biggs

    摘要: Systems and methods for testing an Arm and Fire Device (AFD). The system includes an AFD arm controller and a first power supply coupled to the AFD controller to provide arming power to the AFD controller. The system further includes a monitoring module coupled to the AFD controller through a plurality of means of isolation and communication. The monitoring module may include one or more monitor circuits for the AFD to test at least one circuit in the AFD, at least one circuit external to the AFD, or combination. The system further includes at least one output for the AFD to provide data from the monitoring module. The system may further include a first switch to control the monitoring module is powered and a second switch to control power to the AFD arm module. The system can include an input for applying data to the AFD.

    Systems and methods for testing arm and fire devices

    公开(公告)号:US10197611B2

    公开(公告)日:2019-02-05

    申请号:US15160046

    申请日:2016-05-20

    申请人: Raytheon Company

    发明人: Bradley M. Biggs

    摘要: Systems and methods for testing an Arm and Fire Device (AFD). The system includes an AFD arm controller and a first power supply coupled to the AFD controller to provide arming power to the AFD controller. The system further includes a monitoring module coupled to the AFD controller through a plurality of means of isolation and communication. The monitoring module may include one or more monitor circuits for the AFD to test at least one circuit in the AFD, at least one circuit external to the AFD, or combination. The system further includes at least one output for the AFD to provide data from the monitoring module. The system may further include a first switch to control the monitoring module is powered and a second switch to control power to the AFD arm module. The system can include an input for applying data to the AFD.

    SHOCK MITIGATION ASSEMBLY FOR A PENETRATING WEAPON
    3.
    发明申请
    SHOCK MITIGATION ASSEMBLY FOR A PENETRATING WEAPON 有权
    冲击减震组件用于穿刺武器

    公开(公告)号:US20160265888A1

    公开(公告)日:2016-09-15

    申请号:US14656226

    申请日:2015-03-12

    申请人: Raytheon Company

    IPC分类号: F42B12/20 F42B3/22

    摘要: A shock mitigation assembly for a penetrating explosive weapon having a first explosive charge and a second explosive charge includes an electronic circuit card having an electronic circuit formed therein, a weight attached to the circuit card to form a circuit card subassembly, a housing enclosing the subassembly, and a hyperelastic material between the housing and the subassembly for internal shock mitigation. The hyperelastic material has a modulus of elasticity that remains elastic characteristics with shock, temperature, or a combination of shock and temperature. The housing may include a casing and a cover with corresponding features that mate with one another and prevent separation of the cover from the casing. The casing also may have an external spiral flange that overlaps an internal spiral flange of a support for the casing, with a hyperelastic material between the casing and support for external shock mitigation.

    摘要翻译: 具有第一炸药和第二炸药的穿透性爆炸武器的减震组件包括其中形成有电子电路的电子电路卡,附接到电路卡以形成电路卡子组件的重物,包围子组件的壳体 ,以及外壳和子组件之间的超弹性材料,用于内部减震。 超弹性材料具有弹性模量,其具有冲击,温度或冲击和温度的组合的弹性特性。 壳体可以包括壳体和具有彼此配合的相应特征的盖,并且防止盖与壳体分离。 套管还可以具有外壳螺旋凸缘,其与用于套管的支撑件的内螺旋凸缘重叠,壳体和支撑件之间的超弹性材料用于外部减震。

    Shock mitigation assembly for a penetrating weapon

    公开(公告)号:US09851187B2

    公开(公告)日:2017-12-26

    申请号:US14656226

    申请日:2015-03-12

    申请人: Raytheon Company

    IPC分类号: F42B12/20 F42C11/00

    摘要: A shock mitigation assembly for a penetrating explosive weapon having a first explosive charge and a second explosive charge includes an electronic circuit card having an electronic circuit formed therein, a weight attached to the circuit card to form a circuit card subassembly, a housing enclosing the subassembly, and a hyperelastic material between the housing and the subassembly for internal shock mitigation. The hyperelastic material has a modulus of elasticity that remains elastic characteristics with shock, temperature, or a combination of shock and temperature. The housing may include a casing and a cover with corresponding features that mate with one another and prevent separation of the cover from the casing. The casing also may have an external spiral flange that overlaps an internal spiral flange of a support for the casing, with a hyperelastic material between the casing and support for external shock mitigation.